Essential oils, new source of algicidal compounds
暂无分享,去创建一个
[1] Nadine Eberhardt,et al. Algal Culturing Techniques , 2016 .
[2] Hoon Cho,et al. Algicidal effects of yellow clay and the thiazolidinedione derivative TD49 on the fish-killing dinoflagellate Cochlodinium polykrikoides in microcosm experiments , 2014, Journal of Applied Phycology.
[3] A. Riahi-Madvar,et al. Toxicity of essential oil of Satureja khuzistanica: In vitro cytotoxicity and anti-microbial activity , 2014, Journal of immunotoxicology.
[4] P. Cecchi,et al. Algicidal effects of Zostera marina L. and Zostera noltii Hornem. extracts on the neuro-toxic bloom-forming dinoflagellate Alexandrium catenella , 2013 .
[5] محمد صدیق مرتضوی,et al. تعیین برخی از پارامترهای موثر بر رشد و شکوفایی داینوفلاژله Cochlodinium polykrikoides , 2012 .
[6] M. Mohammadi,et al. The relation between environmental parameters of Hormuzgan coastline in Persian Gulf and occurrence of the first harmful algal bloom of Cochlodinium polykrikoides (Gymnodiniaceae). , 2012 .
[7] M. Saharkhiz,et al. Effect of essential oils of Zataria multiflora on in vitro rumen fermentation, protozoal population, growth and enzyme activity of anaerobic fungus isolated from Mehraban sheep , 2012 .
[8] Ichiro Imai,et al. Life cycle, physiology, ecology and red tide occurrences of the fish-killing raphidophyte Chattonella , 2012 .
[9] J. Hadian,et al. Composition and in vitro antibacterial activity of essential oils from four Satureja species growing in Iran , 2012, Natural product research.
[10] J. Chen,et al. Harmful algal blooms mitigation using clay/soil/sand modified with xanthan and calcium hydroxide , 2012, Journal of Applied Phycology.
[11] Hong-yu Zhang,et al. The antialgal activity of 40 medicinal plants against Microcystis aeruginosa , 2012, Journal of Applied Phycology.
[12] Huiming Lu,et al. Secondary metabolites from the seaweed Gracilaria lemaneiformis and their allelopathic effects on Skeletonema costatum , 2011 .
[13] Young-Chae Song,et al. Removal of Cochlodinium polykrikoides by dredged sediment: A field study , 2010 .
[14] Yong-Ki Hong,et al. Isolation of algicidal compounds from the red alga Corallina pilulifera against red tide microalgae , 2010, Journal of Applied Phycology.
[15] S. Jung,et al. Testing addition of Pseudomonas fluorescens HYK0210-SK09 to mitigate blooms of the diatom Stephanodiscus hantzschii in small- and large-scale mesocosms , 2010, Journal of Applied Phycology.
[16] R. Figueroa,et al. On the control of HAB species using low biosurfactant concentrations , 2009 .
[17] You Wang,et al. Effects of two species of macroalgae—Ulva pertusa and Gracilaria lemaneiformis—on growth of Heterosigma akashiwo (Raphidophyceae) , 2009, Journal of Applied Phycology.
[18] Hong-Ying Hu,et al. Allelopathic inhibition on red tide microalgae Skeletonema costatum by five macroalgal extracts , 2008 .
[19] C. Tomas,et al. Red tide blooms of Cochlodinium polykrikoides in a coastal cove , 2008 .
[20] S. Kimura,et al. Resistance of the fish-killing dinoflagellate Cochlodinium polykrikoides against algicidal bacteria isolated from the coastal sea of Japan , 2008 .
[21] Mi Seon Kim,et al. Control of the harmful alga Cochlodinium polykrikoides by the naked ciliate Strombidinopsis jeokjo in mesocosm enclosures , 2008 .
[22] Seong-Yun Jeong,et al. Isolation, identification, and algicidal activity of marine bacteria against Cochlodinium polykrikoides , 2008, Journal of Applied Phycology.
[23] You Wang,et al. Effects of three macroalgae, Ulva linza (Chlorophyta), Corallina pilulifera (Rhodophyta) and Sargassum thunbergii (Phaeophyta) on the growth of the red tide microalga Prorocentrum donghaiense under laboratory conditions , 2007 .
[24] M. Yousefzadi,et al. Antimicrobial Activity of Some Salvia Species Essential Oils from Iran , 2007, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[25] Yun Tian,et al. Effect of five chinese traditional medicines on the biological activity of a red-tide causing alga - Alexandrium tamarense , 2007 .
[26] Y. Chisti,et al. Biotechnological significance of toxic marine dinoflagellates. , 2007, Biotechnology advances.
[27] Xiuxian Song,et al. Effects of macroalgae Ulva pertusa (Chlorophyta) and Gracilaria lemaneiformis (Rhodophyta) on growth of four species of bloom-forming dinoflagellates , 2007 .
[28] Shahla Ahmadi,et al. The effect of distillation methods and stage of plant growth on the essential oil content and composition of Satureja rechingeri Jamzad , 2007 .
[29] S. Nikfar,et al. Effect of Satureja khuzestanica essential oil on male rat fertility. , 2006, Fitoterapia.
[30] M. Estrada,et al. The role of selective predation in harmful algal blooms , 2006 .
[31] P. Chalier,et al. Antimicrobial activity of carvacrol related to its chemical structure , 2006, Letters in applied microbiology.
[32] Gang Pan,et al. Removal of cyanobacterial blooms in Taihu Lake using local soils. I. Equilibrium and kinetic screening on the flocculation of Microcystis aeruginosa using commercially available clays and minerals. , 2006, Environmental pollution.
[33] J. L. T. Tjeerdsma-van Bokhoven,et al. Structural requirements for the antimicrobial activity of carvacrol. , 2006, Journal of agricultural and food chemistry.
[34] M. Veldhuis,et al. Bloom dynamics and biological control of a high biomass HAB species in European coastal waters: A Phaeocystis case study , 2005 .
[35] Xu Yan. Study on Inhibitory Effects of Nine Macroalgae on the Growth of Heterosigma akashiwo , 2005 .
[36] R. Andersen,et al. Algal culturing techniques , 2005 .
[37] H. Hosseinzadeh,et al. Antinociceptive effects of Zataria multiflora Boiss fractions in mice. , 2004, Journal of ethnopharmacology.
[38] Yong-Ki Hong,et al. Algicidal activity of the seaweed Corallina pilulifera against red tide microalgae , 2000, Journal of Applied Phycology.
[39] Dae-Il Kim,et al. Effects of temperature, salinity and irradiance on the growth of the harmful red tide dinoflagellate Cochlodinium polykrikoides Margalef (Dinophyceae) , 2004 .
[40] X. Verlecar,et al. Phytoplankton Identification Manual , 2004 .
[41] Fred W. McLafferty,et al. BenchTop/PBM : Wiley registry of mass spectral data 7th edition, with NIST 2002 , 2003 .
[42] T. Honjo,et al. Possible factors responsible for the toxicity of Cochlodinium polykrikoides, a red tide phytoplankton. , 2002, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[43] K. Kong,et al. The highly stable alcohol dehydrogenase of Thermomicrobium roseum: purification and molecular characterization. , 2002, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[44] Robert P. Adams,et al. Identification of essential oil components by gas chromatography/quadrupole mass spectroscopy , 2001 .
[45] Lee,et al. Biochemical responses of fish exposed to a harmful dinoflagellate Cochlodinium polykrikoides. , 2000, Journal of experimental marine biology and ecology.
[46] Fred W. McLafferty,et al. Registry of mass spectral data , 1974 .